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A spectroscopic and computational study of Al(III) complexes in sodium cryolite melts: Ionic composition in a wide range of cryolite ratios

机译:钠冰晶石熔体中Al(III)配合物的光谱和计算研究:各种冰晶石比率下的离子组成

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摘要

The structure of sodium cryolite melts was studied using Raman spectroscopy and quantum chemical calculations performed at the density functional theory level. The existence of bridged forms in the melts was argued first from the analysis of experimental Raman spectra. In the quantum chemical modelling emphasis was put on the construction of potential energy surfaces describing the formation/dissociation of certain complex species. Effects of the ionic environment were found to play a crucial role in the energetics of model processes. The structure of the simplest possible polymeric forms involving two Al centres linked through F atoms ("dimers") was thoroughly investigated. The calculated equilibrium constants and model Raman spectra yield additional evidence in favour of the dimers. This agrees with a self-consistent analysis of a series of Raman spectra for a wide range of the melt composition.
机译:使用拉曼光谱法和在密度泛函理论水平上进行的量子化学计算研究了钠冰晶石熔体的结构。首先通过实验拉曼光谱的分析来论证熔体中存在桥接形式。在量子化学建模中,重点放在描述某些复杂物种的形成/解离的势能表面的构造上。发现离子环境的影响在模型过程的能量学中起关键作用。彻底研究了涉及两个通过F原子连接的Al中心(“二聚体”)的最简单可能的聚合物形式的结构。计算出的平衡常数和模型拉曼光谱产生了支持二聚体的其他证据。这与对各种熔体组成的一系列拉曼光谱的自洽分析相吻合。

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